生物炭是一种适用于糠化木的阻燃剂吗?

IF 5.3 Q2 MATERIALS SCIENCE, COMPOSITES
Peter Rantuch, Veronika Kvorková, Igor Wachter, Jozef Martinka, Tomáš Štefko
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引用次数: 0

摘要

木材是一种非常美观和环保的材料,可以在室内外使用。目前,许多研究小组都在密切关注使用糠醇或生物炭进行聚合物改性的问题,因为它具有商业应用潜力。预计这种材料将具有持久性,并能长期保持其机械性能。在本文中,采用真空渗透法,用富含生物炭的糠醇溶液对云杉木材进行了改性。因此,这项工作的目的是研究云杉木材是否适合这种处理方法,并评估热降解特性对制备的复合材料的影响。原始木材(W)、糠化木材(FW)和生物炭-糠化木材生物复合材料(BFW)的热重分析表明其热稳定性存在显著差异。由于其成分,木材的热稳定性最低。BFW 的热稳定性高于木材。FW 的分解与 BFW 相似,但在低温下的质量损失更大。所获得的结果证明,与原始云杉木材相比,BFW 的两个关键火灾特性(有效燃烧热和一氧化碳产量的降低)都有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Is biochar a suitable fire retardant for furfurylated wood?

Wood is a very aesthetically pleasing and environmentally friendly material that can be used both indoors and outdoors. Many research teams are now paying closer attention to polymer modification using furfuryl alcohol or biochar because of its potential for commercial applications. It is anticipated that this kind of material will be long-lasting and maintain its mechanical properties over time. In this paper, spruce wood was modified by a furfuryl alcohol solution enriched by biochar using vacuum infiltration. Therefore, the purpose of this work was to investigate whether spruce wood was suitable for this treatment and to evaluate the effects of thermal degradation properties on prepared composite. Thermogravimetric analysis of raw wood (W), furfurylated wood (FW), and biochar-furfurylated wood bio-composite (BFW) reveals significant differences in its thermal stability. Wood exhibits the lowest thermal stability due to its composition. BFW showed higher thermal stability than wood. FW decomposes similarly to BFW but shows higher mass loss at low temperatures. The obtained results proved increasing two key fire characteristics (decrease of effective heat of combustion and carbon monoxide yield) of BFW in comparison with pristine spruce wood.

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来源期刊
Composites Part C Open Access
Composites Part C Open Access Engineering-Mechanical Engineering
CiteScore
8.60
自引率
2.40%
发文量
96
审稿时长
55 days
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